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Design of a wearable four-channel near-infrared spectroscopy system for the measurement of brain hemodynamic responses

机译:耐磨四通道近红外光谱系统的设计,用于测量脑血流动力学响应

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This work describes the design and development of a four-channel near-infrared spectroscopy system to detect the oxygenated and deoxygenated hemoglobin concentration changes in the brain during various motor tasks. The system uses light-emitting diodes corresponding to two wavelengths of 760 nm and 850 nm sensitive to deoxygenated and oxygenated hemoglobin concentration changes, respectively. The response is detected using a photodetector with an integrated transimpedance amplifier. The system is designed with four channels for functional near-infrared spectroscopy (fNIRS) signals acquisition. Two experiments were conducted to demonstrate the ability of the system to detect the changes in hemodynamic responses of different tasks. In the first experiment, the hemodynamic changes during motor execution and imagery of right- and left-fist clenching tasks were acquired by the developed system and validated against a standard multichannel NIRS system. In another experiment, the fNIRS signals during rest and motor execution of right-fist clenching task were acquired using the system and classified. The results demonstrate the ability of the designed system to detect the brain hemodynamic changes during various tasks. Also, the activation patterns obtained by the developed system with a minimum number of channels are on par with those obtained by the commercial system. The developed four-channel NIRS system is user-friendly and has been designed with inexpensive components, unlike the commercially available NIRS instruments that are cumbersome and expensive.
机译:这项工作描述了四通道近红外光谱系统的设计和开发,以检测各种电动机任务期间脑内氧化和脱氧血红蛋白浓度变化。该系统使用对应于两个波长的760nm波长和850nm的发光二极管,分别对脱氧和含氧血红蛋白浓度的变化。使用具有集成跨阻抗放大器的光电探测器检测响应。该系统设计有四个通道,用于功能近红外光谱(FNIR)信号采集。进行了两次实验以证明该系统检测不同任务的血流动力学响应变化的能力。在第一个实验中,由发达的系统获取了电动机执行期间的血流动力学和右键握紧任务的图像,并针对标准多通道NIRS系统验证。在另一个实验中,使用该系统获取休息期间的FNIR信号和右拳握紧任务的电机执行。结果证明了设计系统在各种任务中检测脑血液动力学变化的能力。而且,由开发系统获得的具有最小数量的通道获得的激活模式是接通由商业系统获得的那些。开发的四通道NIRS系统是用户友好的,并且是使用廉价的组件设计,与商业上可用的NIRS仪器不同,这些仪器是麻烦和昂贵的。

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